首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Theoretical Foundations of Memristor Cellular Nonlinear Networks: A DRM2-Based Method to Design Memcomputers With Dynamic Memristors
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Theoretical Foundations of Memristor Cellular Nonlinear Networks: A DRM2-Based Method to Design Memcomputers With Dynamic Memristors

机译:忆阻蜂窝非线性网络的理论基础:基于DRM2的设计方法与动态映像器

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In the memristive version of a standard space-invariant Cellular Nonlinear Network, each cell accommodates one first-order non-volatile memristor in parallel with a capacitor. In case, the resistance switching memory may only undergo almost-instantaneous switching transitions between two possible resistive states, acting at any time, as either the on or the off resistor, the processing elements effectively operate as first-order dynamical systems, and the classical Dynamic Route Map technique may be applied to investigate their operating principles. On the contrary, in case the memristors experience smooth conductance changes, as the bioinspired array implements memcomputing paradigms, each cell truly behaves as a second-order dynamical system. The recent extension of the Dynamic Route Map analysis tool to systems with two degrees of freedom constitutes a powerful technique to investigate the nonlinear dynamics of memristive cellular networks in these scenarios. This paper exploits this system-theoretic technique, called Second-Order Dynamic Route Map, to introduce a novel systematic procedure to design memristive arrays, in which a given memcomputing task is executed by ensuring that, depending upon the network inputs and initial conditions, the analogue dynamic routes of the states of the processing elements, namely capacitor voltages and memristor states, asymptotically converge toward pre-defined stable equilibria.
机译:在标准空间不变蜂窝非线性网络的Memristive版本中,每个电池与电容器并联地容纳一个一阶非易失性映射器。在这种情况下,电阻切换存储器只能在两个可能的电阻状态之间经过几乎瞬时切换转换,随时作用,作为开启或关闭电阻,处理元件有效地作为一阶动态系统,以及经典操作可以应用动态路径图技术来研究其操作原理。相反,如果忆阻器经历平滑的电导变化,因为生物悬浮阵列实现了MEMComputing范式,每个单元都表现为二阶动态系统。最近的动态路线地图分析工具与具有两度自由度的系统的延伸构成了一种强大的技术,可以在这些场景中研究忆阻蜂窝网络的非线性动态。本文利用该系统 - 理论技术称为二阶动态路线图,以引入新的系统过程来设计存储器阵列,其中通过确保根据网络输入和初始条件来执行给定的MEMComputing任务。处理元件的状态的模拟动态路由,即电容器电压和忆阻器状态,渐近地收敛到预定义的稳定均衡。

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